Topological phonon transport in an optomechanical system

被引:47
作者
Ren, Hengjiang [1 ,2 ,3 ,7 ,8 ]
Shah, Tirth [4 ,5 ]
Pfeifer, Hannes [4 ,9 ]
Brendel, Christian [4 ]
Peano, Vittorio [4 ]
Marquardt, Florian [4 ,5 ]
Painter, Oskar [1 ,2 ,3 ,6 ]
机构
[1] CALTECH, Thomas J Watson Sr Lab Appl Phys, Pasadena, CA 91125 USA
[2] CALTECH, Kavli Nanosci Inst, Pasadena, CA 91125 USA
[3] CALTECH, Inst Quantum Informat & Matter, Pasadena, CA 91125 USA
[4] Max Planck Inst Sci Light, Staudtstr 2, D-91058 Erlangen, Germany
[5] Friedrich Alexander Univ Erlangen Nurnberg, Dept Phys, Staudtstr 7, D-91058 Erlangen, Germany
[6] AWS Ctr Quantum Comp, Pasadena, CA 91125 USA
[7] ASTAR, Inst High Performance Comp, Singapore 138632, Singapore
[8] Anyon Comp Inc, Dover, DE 19901 USA
[9] Univ Bonn, Inst Angew Phys, Wegelerstr 8, D-53115 Bonn, Germany
基金
欧盟地平线“2020”;
关键词
MODES;
D O I
10.1038/s41467-022-30941-0
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Light is a powerful tool for controlling mechanical motion, as shown by numerous applications in the field of cavity optomechanics. Recently, small scale optomechanical circuits, connecting a few optical and mechanical modes, have been demonstrated in an ongoing push towards multi-mode on-chip optomechanical systems. An ambitious goal driving this trend is to produce topologically protected phonon transport. Once realized, this will unlock the full toolbox of optomechanics for investigations of topological phononics. Here, we report the realization of topological phonon transport in an optomechanical device. Our experiment is based on an innovative multiscale optomechanical crystal design and allows for site-resolved measurements in an array of more than 800 cavities. The sensitivity inherent in our optomechanical read-out allowed us to detect thermal fluctuations traveling along topological edge channels. This represents a major step forward in an ongoing effort to downscale mechanical topological systems. To realize the full promise of topological mechanical vibrations, they have to be controlled successfully at the nanoscale. Here the authors report topological phonon transport in an optomechanical array. This unlocks the full toolbox of cavity optomechanics, coupling light to motion, for the area of topological phononics.
引用
收藏
页数:7
相关论文
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